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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Capillary electrophoretic studies on the migration behavior of cationic solutes and the influence of interactions of cationic solutes with sodium dodecyl sulfate on the formation of micelles and critical micelle concentration
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Capillary electrophoretic studies on the migration behavior of cationic solutes and the influence of interactions of cationic solutes with sodium dodecyl sulfate on the formation of micelles and critical micelle concentration

机译:毛细管电泳研究阳离子溶质的迁移行为以及阳离子溶质与十二烷基硫酸钠的相互作用对胶束形成和临界胶束浓度的影响

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The migration behavior of cationic solutes and influences of the interactions of cationic solutes with sodium dodecyl sulfate (SDS) on the formation of micelles and its critical micelle concentration (CMC) were investigated by capillary electrophoresis at neutral pH. Catecholamines and structurally related compounds, including epinephrine, norepinephrine, dopamine, norephedrine, and tyramine, which involve different extents of hydrophobic, ionic and hydrogen-bonding interactions with SDS surfactant, are selected as cationic solutes. The dependence of the effective electrophoretic mobility of cationic solutes on the concentration of surfactant monomers in the premicellar region provides direct evidence of the formation of ion-pairs between cationic solutes and anionic dodecyl sulfate monomers. Three different approaches, based on the variations of either the effective electrophoretic mobility or the retention factor as a function of surfactant concentration in the premicellar and micellar regions, and the linear relationship between the retention factor and the product of a distribution coefficient and the phase ratio, were considered to determine the CMC value of SDS micelles. The suitability of the methods used for the determination of the CMC of SDS with these cationic solutes was discussed. Depending on the structures of cationic solutes and electrophoretic conditions, the CMC value of SDS determined varies in a wide concentration range. The results indicate that, in addition to hydrophobic interaction, both ionic and hydrogen-bonding interactions have pronounced effects on the formation of SDS micelles. Ionic interaction between cationic solutes and SDS surfactant stabilizes the SDS micelles, whereas hydrogen-bonding interactions weakens the solubilization of the attractive ionic interaction. The elevation of the CMC of SDS depends heavily on hydrogen-bonding interactions between cationic solutes and SDS surfactant. Thus, the CMC value of SDS is remarkably elevated with catecholamines, such as epinephrine and norepinephrine, as compared with norephedrine. In addition, the effect of methanol content in the sample solution of these cationic solutes on the CMC of SDS was also examined. (C) 2004 Elsevier B.V. All rights reserved.
机译:在中性pH条件下,通过毛细管电泳研究了阳离子溶质的迁移行为以及阳离子溶质与十二烷基硫酸钠(SDS)的相互作用对胶束形成及其临界胶束浓度(CMC)的影响。选择儿茶酚胺和与结构相关的化合物(包括肾上腺素,去甲肾上腺素,多巴胺,去甲肾上腺素和酪胺),它们与SDS表面活性剂的疏水,离子和氢键作用程度不同,作为阳离子溶质。阳离子溶质的有效电泳迁移率依赖于在胶束前区中表面活性剂单体的浓度,为阳离子溶质和阴离子十二烷基硫酸盐单体之间形成离子对提供了直接的证据。三种不同的方法,基于有效的电泳迁移率或保留因子随前胶束和胶束区域中表面活性剂浓度的变化,以及保留因子与分布系数和相比乘积之间的线性关系被认为是确定SDS胶束的CMC值。讨论了用于测定这些阳离子溶质的SDS CMC的方法的适用性。取决于阳离子溶质的结构和电泳条件,确定的SDS的CMC值在很宽的浓度范围内变化。结果表明,除疏水相互作用外,离子键和氢键相互作用均对SDS胶束的形成有显着影响。阳离子溶质和SDS表面活性剂之间的离子相互作用可稳定SDS胶束,而氢键相互作用会减弱有吸引力的离子相互作用的增溶作用。 SDS的CMC的升高很大程度上取决于阳离子溶质和SDS表面活性剂之间的氢键相互作用。因此,与去甲肾上腺素相比,儿茶酚胺如肾上腺素和去甲肾上腺素能显着提高SDS的CMC值。此外,还检查了这些阳离子溶质的样品溶液中甲醇含量对SDS CMC的影响。 (C)2004 Elsevier B.V.保留所有权利。

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